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Scrap melting in continuous process rotary melting furnace Part 1 - Bench scale furnace trials

机译:连续工艺旋转熔化炉中的废料熔化第1部分-台式炉试验

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摘要

A heat transfer model was developed for scrap melting in an oxyfuel fired continuous process rotary melting furnace (CPRMF), which was envisioned as a replacement for the electric arc furnace in minimill steelmaking. The results are presented in a two part series. This first paper describes the bench scale CPRMF, the experimental procedure, and the operational results which will be used to validate the model. Two groups of copper melting trials were performed to explore aspects of furnace operation such as oxygen enrichment and slag thickness. The experimental results indicated that furnace thermal efficiency was significantly improved by moving from 37 to 80% oxygen in the combustion air and, extrapolating the results, would be ∼30% for oxy fuel firing. With the constant oxygen level of 53%, the introduction of a slag layer significantly lowered the efficiency from 22 to 18% for 1·3 cm slag and 12% for 2·5 cm slag.
机译:开发了一种传热模型,用于在氧燃料燃烧的连续工艺旋转熔化炉(CPRMF)中进行废料熔化,该模型被认为可以替代小型炼钢厂的电弧炉。结果分为两个部分。第一篇论文介绍了台式量表CPRMF,实验步骤和操作结果,这些数据将用于验证模型。进行了两组铜熔炼试验,以探索炉子操作的各个方面,例如氧气富集和炉渣厚度。实验结果表明,通过将燃烧空气中的氧气从37%移至80%,可以显着提高炉子的热效率,并据此推断,对于含氧燃料的燃烧,其热效率约为30%。在恒定氧含量为53%的情况下,炉渣层的引入将1·3 cm炉渣的效率从22%降低至18%,而2·5 cm炉渣的效率从12%降低。

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